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单细胞转录组学揭示叶片韧皮部细胞的独特身份。

Distinct identities of leaf phloem cells revealed by single cell transcriptomics.

机构信息

Institute for Molecular Physiology and Cluster of Excellence on Plant Sciences (CEPLAS), Heinrich-Heine-University Düsseldorf, Düsseldorf 40225, Germany.

Center for Plant Molecular Biology, University of Tübingen, Tübingen 72076, Germany.

出版信息

Plant Cell. 2021 May 5;33(3):511-530. doi: 10.1093/plcell/koaa060.

Abstract

The leaf vasculature plays a key role in solute translocation. Veins consist of at least seven distinct cell types, with specific roles in transport, metabolism, and signaling. Little is known about leaf vascular cells, in particular the phloem parenchyma (PP). PP effluxes sucrose into the apoplasm as a basis for phloem loading, yet PP has been characterized only microscopically. Here, we enriched vascular cells from Arabidopsis leaves to generate a single-cell transcriptome atlas of leaf vasculature. We identified at least 19 cell clusters, encompassing epidermis, guard cells, hydathodes, mesophyll, and all vascular cell types, and used metabolic pathway analysis to define their roles. Clusters comprising PP cells were enriched for transporters, including SWEET11 and SWEET12 sucrose and UmamiT amino acid efflux carriers. We provide evidence that PP development occurs independently from ALTERED PHLOEM DEVELOPMENT, a transcription factor required for phloem differentiation. PP cells have a unique pattern of amino acid metabolism activity distinct from companion cells (CCs), explaining differential distribution/metabolism of amino acids in veins. The kinship relation of the vascular clusters is strikingly similar to the vein morphology, except for a clear separation of CC from the other vascular cells including PP. In summary, our single-cell RNA-sequencing analysis provides a wide range of information into the leaf vasculature and the role and relationship of the leaf cell types.

摘要

叶片脉管系统在溶质转运中起着关键作用。叶脉至少由七种不同的细胞类型组成,它们在运输、代谢和信号转导方面具有特定的功能。目前对于叶片脉管系统的细胞,尤其是韧皮部薄壁细胞(phloem parenchyma,PP)了解甚少。PP 将蔗糖分泌到质外体中,作为韧皮部装载的基础,但仅从显微镜下对其进行了表征。在这里,我们从拟南芥叶片中富集脉管细胞,生成叶片脉管系统的单细胞转录组图谱。我们至少鉴定出 19 个细胞簇,包括表皮、保卫细胞、水孔、叶肉和所有脉管细胞类型,并利用代谢途径分析来定义它们的功能。包含 PP 细胞的簇富含转运蛋白,包括 SWEET11 和 SWEET12 蔗糖和 UmamiT 氨基酸外排载体。我们提供的证据表明,PP 的发育与 ALTERED PHLOEM DEVELOPMENT (一种分化为韧皮部所必需的转录因子)无关。PP 细胞具有独特的氨基酸代谢活性模式,与伴胞(companion cells,CC)不同,这解释了氨基酸在叶脉中的不同分布/代谢。脉管细胞簇的亲缘关系与叶脉形态惊人地相似,除了 CC 与其他包括 PP 的脉管细胞明显分离之外。总之,我们的单细胞 RNA-seq 分析为叶片脉管系统以及叶片细胞类型的功能和关系提供了广泛的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a16d/8136902/2ac7a975ce60/koaa060f11.jpg

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